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Phase evolution and microwave dielectric properties of (Bi1−xLnx)2MoO6 (Ln=Nd and La, x≤0.3) ceramics

  • Li Xia Pang
  • , Wei Guo Liu
  • , Di Zhou
  • , Zhen Xing Yue
  • Xi'an Technological University
  • University of Sheffield
  • Tsinghua University

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

(Bi1−xLnx)2MoO6 (Ln=Nd and La) ceramics were prepared by conventional solid state reaction method. Solid solutions crystallizing in a monoclinic structure with a space group P21/c were obtained in the (Bi1−xLax)2MoO6 (x≤0.3) ceramics. For the (Bi1−xNdx)2MoO6 ceramics, tetragonal Nd2MoO6 phase with a space group I41/acd was detected when x value reached 0.2 besides the Bi2MoO6 solid solution. Temperature stability and quality factor Qf value at microwave frequencies were improved by appropriate substitution for Bi3+ by Nd3+ and/or La3+ in Bi2MoO6 system. When x=0.2, for both (Bi1−xNdx)2MoO6 and (Bi1−xLax)2MoO6 ceramics, Qf values reached maximum about 30,200 GHz and 32,900 GHz, respectively. TCF value shifted towards zero with substitution of Bi3+ by Nd3+ and/or La3+. When x=0.3, TCF values of (Bi1−xNdx)2MoO6 and (Bi1−xLax)2MoO6 ceramics were −70 and −85 ppm/°C, respectively. Relation between crystal structure, microstructure and microwave dielectric properties were discussed.

Original languageEnglish
Pages (from-to)17243-17247
Number of pages5
JournalCeramics International
Volume42
Issue number15
DOIs
StatePublished - 15 Nov 2016

Keywords

  • A. Solid state reaction
  • C. Dielectric properties

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